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基于實時性優(yōu)化的內(nèi)燃機燃燒分析系統(tǒng)研究
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國家自然科學(xué)基金項目(51576083)


Development of Real-time Combustion Analysis System for IC Engine Based on Real-time Optimization
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    摘要:

    采用缸壓傳感器,、數(shù)據(jù)采集卡,、光電編碼器和LabVIEW軟件,,搭建在線缸壓采集和實時燃燒分析系統(tǒng)平臺,,研究HCCI和RCCI燃燒模式的循環(huán)波動特性,。針對單循環(huán)缸壓測量過程中的通道效應(yīng)干擾,,基于頻譜分析,,采用FFT,、線性插值法和IFFT等方法相結(jié)合的濾波方式,,實現(xiàn)共振峰的在線自適應(yīng)識別與實時濾波,,較好地減少了單循環(huán)缸壓的干擾誤差,使單循環(huán)的實時燃燒分析成為可能。隨后,,基于實時濾波后的缸壓曲線,,計算得到內(nèi)燃機的最大壓力升高率、燃燒放熱率,、爆發(fā)壓力等重要燃燒參數(shù),。利用程序算法中同步性良好的生產(chǎn)者/消費者運算模式提高數(shù)據(jù)的共享能力,實現(xiàn)了數(shù)據(jù)實時運算與數(shù)據(jù)快速儲存的并行處理,,提高了燃燒計算的實時性,;針對發(fā)動機不同工作階段采用了不同精度層次的計算方法,減少了進排氣,、壓縮和膨脹階段的計算耗時,,在計算量較大的燃燒放熱率計算部分,通過適當(dāng)簡化計算公式和公式節(jié)點運算模塊來提高燃燒系統(tǒng)的實時性,。最后,,分析了燃燒分析系統(tǒng)的實時性,并進行了燃燒分析系統(tǒng)的實驗驗證,。

    Abstract:

    The homogeneous charge compression ignition (HCCI) and reactivity controlled compression ignition (RCCI) engines are very sensitive to the incylinder compression temperature, the spatial distribution of fuel and air, and the component of fuels. Variation of these facts will result in the cyclic variation in IC engine. Based on the needs of cyclic variation research in HCCI engine and RCCI engine, an online cylinder pressure acquisition and real-time combustion analysis system adopting in-cylinder pressure sensor, data acquisition card, photoelectric encoder and LabVIEW software was built. In order to improve the real-time performance of combustion analysis system, only single cycle cylinder pressure was collected and calculated. There were much pressure fluctuation in single cycle cylinder pressure resulting from channel effect and other effect, and a real-time filtering of in-cylinder pressure was adopted to reduce the interference error of single cycle in-cylinder pressure data. The filtering methods based on spectrum analysis, like fast Fourier transformation (FFT), linear interpolation and inverse fast Fourier transform (IFFT), can realize the online adaptive identification and auto pressure smooth for the single cycle in-cylinder pressure, which made the real-time combustion analysis system for HCCI and RCCI mode possible. Then, based on the smoothed cylinder pressure, some important combustion parameters such as the maximum pressure increase rate, combustion heat release rate and in-cylinder peak pressure were calculated. In order to further improve the real-time performance of the combustion analysis system, the producer/consumer operation mode which can achieve the synchronized process of real-time data calculation and fast data storage was used. The improved data sharing ability can improve the real-time ability of the combustion calculation. Different accuracy levels of calculation methods were adopted for different working stages in engine, which can reduce the calculation time for intake, exhaust, compression and expansion stages. In combustion stage, which had the largest calculating workload, the appropriate simplified calculation formulas and formula node operation modules were adopted to improve the real-time performance. Finally, the real-time performance of the combustion analysis system was analyzed and an experimental verification of the combustion analysis system was carried out. 

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王兆文,郭凱,武文杰,覃國宇,楊燦,成曉北.基于實時性優(yōu)化的內(nèi)燃機燃燒分析系統(tǒng)研究[J].農(nóng)業(yè)機械學(xué)報,2020,51(1):372-382. WANG Zhaowen, GUO Kai, WU Wenjie, QIN Guoyu, YANG Can, CHENG Xiaobei. Development of Real-time Combustion Analysis System for IC Engine Based on Real-time Optimization[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(1):372-382.

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  • 收稿日期:2019-05-09
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  • 在線發(fā)布日期: 2020-01-10
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